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1.3: Measurement and Problem Solving

  • Page ID
    498074
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    Chemistry, like all sciences, is quantitative. It deals with quantities, things that have amounts and units. Dealing with quantities is very important in chemistry, as is relating quantities to each other. In this chapter, we will discuss how we deal with numbers and units, including how they are combined and manipulated.

    • 1.3.1: Taking Measurements
      Chemists measure the properties of matter and express these measurements as quantities. A quantity is an amount of something and consists of a number and a unit. The number tells us how many (or how much), and the unit tells us what the scale of measurement is. For example, when a distance is reported as “5 kilometers,” we know that the quantity has been expressed in units of kilometers and that the number of kilometers is 5.
    • 1.3.2: The Basic Units of Measurement
      Metric prefixes derive from Latin or Greek terms. The prefixes are used to make the units manageable. The SI system is based on multiples of ten. There are seven basic units in the SI system. Five of these units are commonly used in chemistry.
    • 1.3.3: Problem Solving and Unit Conversions
      During your studies of chemistry (and physics also), you will note that mathematical equations are used in a number of different applications. Many of these equations have a number of different variables with which you will need to work. You should also note that these equations will often require you to use measurements with their units. Algebra skills become very important here!
    • 1.3.4: Solving Multi-step Conversion Problems
      Sometimes you will have to perform more than one conversion to obtain the desired unit.
    • 1.3.5: Units Raised to a Power
      Conversion factors for area and volume can also be produced by the dimensional analysis method. Just remember that if a quantity is raised to a power of 10 both the number and the unit must be raised to the same power of 10.
    • 1.3.6: Density
      Density is a physical property found by dividing the mass of an object by its volume. Regardless of the sample size, density is always constant.
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    This page titled 1.3: Measurement and Problem Solving is shared under a not declared license and was authored, remixed, and/or curated by Travis Green.

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